The circuit below consists of three loads in series-parallel connection, with each loads defined as indicated as:- Z₁ Z₁: P₁=100 W, Q₁-200 VAR (inductive) Z₂: P₂=400 W, p.f-0.8 (leading) Z₁: P₁-300 W, S,-600 VA 100 LỢ Z₂ > Find the overall complex power of the circuit, the overall power factor and the source current in phasor form. Given Vs 100L0⁰

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The circuit below consists of three loads in series-parallel connection, with each loads
defined as indicated as:-
Z₁
Z₁: P₁=100 W, Q₁-200 VAR (inductive)
Z₂: P₂-400 W, p.f=0.8 (leading)
Z₁: P₁-300 W, S,-600 VA
Q3) Referring to the Figure below, calculate
(a) the power factor
(b) the average power delivered by the source
(e) the reactive power
(d) the apparent power
(e) the complex power
> Find the overall complex power of the circuit, the overall power factor and the source
current in phasor form. Given Vrms = 100.0⁰
50/50° V
100 LO
202
www
www
-150
10 2
wwwele
160
Z₂
802
Z₁
Transcribed Image Text:The circuit below consists of three loads in series-parallel connection, with each loads defined as indicated as:- Z₁ Z₁: P₁=100 W, Q₁-200 VAR (inductive) Z₂: P₂-400 W, p.f=0.8 (leading) Z₁: P₁-300 W, S,-600 VA Q3) Referring to the Figure below, calculate (a) the power factor (b) the average power delivered by the source (e) the reactive power (d) the apparent power (e) the complex power > Find the overall complex power of the circuit, the overall power factor and the source current in phasor form. Given Vrms = 100.0⁰ 50/50° V 100 LO 202 www www -150 10 2 wwwele 160 Z₂ 802 Z₁
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